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Machine learning to predict high-risk coronary artery disease on CT in the SCOT-HEART trial
by
Dey, Damini
, Adamson, Philip D
, Guimaraes, Alan R M
, Berman, Daniel S
, Mills, Nicholas L
, Dweck, Marc R
, Newby, David E
, Kwieciński, Jacek
, Slomka, Piotr J
, Williams, Michelle Claire
, Nicol, Edward
, Roditi, Giles H
, Weir-McCall, Jonathan R
, Jiang, Muchen
, van Beek, Edwin J R
in
Aged
/ Artificial intelligence
/ Atherosclerosis
/ Cardiology
/ Cardiovascular disease
/ Computed Tomography Angiography
/ Computed Tomography Angiography - methods
/ Coronary Angiography - methods
/ Coronary Artery Disease
/ Coronary Artery Disease - diagnosis
/ Coronary Artery Disease - diagnostic imaging
/ Coronary Artery Disease - epidemiology
/ Coronary Artery Disease - physiopathology
/ Coronary vessels
/ Coronary Vessels - diagnostic imaging
/ Datasets
/ Female
/ Heart
/ Humans
/ Machine Learning
/ Male
/ Medical imaging
/ Middle Aged
/ Original Research
/ Patients
/ Pharmacists
/ Plaque, Atherosclerotic
/ Predictive Value of Tests
/ Prognosis
/ Reproducibility of Results
/ Risk Assessment - methods
/ Risk Factors
/ Tomography
/ Vein & artery diseases
2025
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Machine learning to predict high-risk coronary artery disease on CT in the SCOT-HEART trial
by
Dey, Damini
, Adamson, Philip D
, Guimaraes, Alan R M
, Berman, Daniel S
, Mills, Nicholas L
, Dweck, Marc R
, Newby, David E
, Kwieciński, Jacek
, Slomka, Piotr J
, Williams, Michelle Claire
, Nicol, Edward
, Roditi, Giles H
, Weir-McCall, Jonathan R
, Jiang, Muchen
, van Beek, Edwin J R
in
Aged
/ Artificial intelligence
/ Atherosclerosis
/ Cardiology
/ Cardiovascular disease
/ Computed Tomography Angiography
/ Computed Tomography Angiography - methods
/ Coronary Angiography - methods
/ Coronary Artery Disease
/ Coronary Artery Disease - diagnosis
/ Coronary Artery Disease - diagnostic imaging
/ Coronary Artery Disease - epidemiology
/ Coronary Artery Disease - physiopathology
/ Coronary vessels
/ Coronary Vessels - diagnostic imaging
/ Datasets
/ Female
/ Heart
/ Humans
/ Machine Learning
/ Male
/ Medical imaging
/ Middle Aged
/ Original Research
/ Patients
/ Pharmacists
/ Plaque, Atherosclerotic
/ Predictive Value of Tests
/ Prognosis
/ Reproducibility of Results
/ Risk Assessment - methods
/ Risk Factors
/ Tomography
/ Vein & artery diseases
2025
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Machine learning to predict high-risk coronary artery disease on CT in the SCOT-HEART trial
by
Dey, Damini
, Adamson, Philip D
, Guimaraes, Alan R M
, Berman, Daniel S
, Mills, Nicholas L
, Dweck, Marc R
, Newby, David E
, Kwieciński, Jacek
, Slomka, Piotr J
, Williams, Michelle Claire
, Nicol, Edward
, Roditi, Giles H
, Weir-McCall, Jonathan R
, Jiang, Muchen
, van Beek, Edwin J R
in
Aged
/ Artificial intelligence
/ Atherosclerosis
/ Cardiology
/ Cardiovascular disease
/ Computed Tomography Angiography
/ Computed Tomography Angiography - methods
/ Coronary Angiography - methods
/ Coronary Artery Disease
/ Coronary Artery Disease - diagnosis
/ Coronary Artery Disease - diagnostic imaging
/ Coronary Artery Disease - epidemiology
/ Coronary Artery Disease - physiopathology
/ Coronary vessels
/ Coronary Vessels - diagnostic imaging
/ Datasets
/ Female
/ Heart
/ Humans
/ Machine Learning
/ Male
/ Medical imaging
/ Middle Aged
/ Original Research
/ Patients
/ Pharmacists
/ Plaque, Atherosclerotic
/ Predictive Value of Tests
/ Prognosis
/ Reproducibility of Results
/ Risk Assessment - methods
/ Risk Factors
/ Tomography
/ Vein & artery diseases
2025
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Machine learning to predict high-risk coronary artery disease on CT in the SCOT-HEART trial
Journal Article
Machine learning to predict high-risk coronary artery disease on CT in the SCOT-HEART trial
2025
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Overview
BackgroundMachine learning based on clinical characteristics has the potential to predict coronary CT angiography (CCTA) findings and help guide resource utilisation.MethodsFrom the SCOT-HEART (Scottish Computed Tomography of the HEART) trial, data from 1769 patients was used to train and to test machine learning models (XGBoost, 10-fold cross validation, grid search hyperparameter selection). Two models were separately generated to predict the presence of coronary artery disease (CAD) and an increased burden of low-attenuation coronary artery plaque (LAP) using symptoms, demographic and clinical characteristics, electrocardiography and exercise tolerance testing (ETT).ResultsMachine learning predicted the presence of CAD on CCTA (area under the curve (AUC) 0.80, 95% CI 0.74 to 0.85) better than the 10-year cardiovascular risk score alone (AUC 0.75, 95% CI 0.70, 0.81, p=0.004). The most important features in this model were the 10-year cardiovascular risk score, age, sex, total cholesterol and an abnormal ETT. In contrast, the second model used to predict an increased LAP burden performed similarly to the 10-year cardiovascular risk score (AUC 0.75, 95% CI 0.70 to 0.80 vs AUC 0.72, 95% CI 0.66 to 0.77, p=0.08) with the most important features being the 10-year cardiovascular risk score, age, body mass index and total and high-density lipoprotein cholesterol concentrations.ConclusionMachine learning models can improve prediction of the presence of CAD on CCTA, over the standard cardiovascular risk score. However, it was not possible to improve the prediction of an increased LAP burden based on clinical factors alone.
Publisher
British Cardiovascular Society,BMJ Publishing Group LTD,BMJ Publishing Group
Subject
/ Computed Tomography Angiography
/ Computed Tomography Angiography - methods
/ Coronary Angiography - methods
/ Coronary Artery Disease - diagnosis
/ Coronary Artery Disease - diagnostic imaging
/ Coronary Artery Disease - epidemiology
/ Coronary Artery Disease - physiopathology
/ Coronary Vessels - diagnostic imaging
/ Datasets
/ Female
/ Heart
/ Humans
/ Male
/ Patients
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